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Engineering Sub-Nanometer Channels in Two-Dimensional Materials for Membrane Gas Separation
by
Lin, Haiqing
, Huang, Liang
in
Gas membrane separation
/ Gas separation
/ Gases
/ Graphene
/ graphene oxide
/ Matrix materials
/ Membranes
/ membranes for gas separation
/ mixed-matrix materials
/ Molybdenum
/ Molybdenum disulfide
/ Nanochannels
/ Permeability
/ Polymers
/ Review
/ Two dimensional materials
2018
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Engineering Sub-Nanometer Channels in Two-Dimensional Materials for Membrane Gas Separation
by
Lin, Haiqing
, Huang, Liang
in
Gas membrane separation
/ Gas separation
/ Gases
/ Graphene
/ graphene oxide
/ Matrix materials
/ Membranes
/ membranes for gas separation
/ mixed-matrix materials
/ Molybdenum
/ Molybdenum disulfide
/ Nanochannels
/ Permeability
/ Polymers
/ Review
/ Two dimensional materials
2018
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Engineering Sub-Nanometer Channels in Two-Dimensional Materials for Membrane Gas Separation
by
Lin, Haiqing
, Huang, Liang
in
Gas membrane separation
/ Gas separation
/ Gases
/ Graphene
/ graphene oxide
/ Matrix materials
/ Membranes
/ membranes for gas separation
/ mixed-matrix materials
/ Molybdenum
/ Molybdenum disulfide
/ Nanochannels
/ Permeability
/ Polymers
/ Review
/ Two dimensional materials
2018
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Engineering Sub-Nanometer Channels in Two-Dimensional Materials for Membrane Gas Separation
Journal Article
Engineering Sub-Nanometer Channels in Two-Dimensional Materials for Membrane Gas Separation
2018
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Overview
Sub-nanochannels constructed by stacking two-dimensional (2D) nanosheets in parallel provide a unique molecular separation pathway with excellent size-sieving ability for membrane gas separation. Herein we review the progress in engineering these 2D channels for efficient gas separation including graphene, graphene oxide (GO), molybdenum disulfide (MoS2), and MXene. Mixed matrix materials containing these 2D materials in polymers are also reviewed and compared with conventional polymers for gas separation.
Publisher
MDPI AG,MDPI
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